- PII
- 10.31857/S0016794024030065-1
- DOI
- 10.31857/S0016794024030065
- Publication type
- Article
- Status
- Published
- Authors
- Volume/ Edition
- Volume 64 / Issue number 3
- Pages
- 400-407
- Abstract
- Based on data from a network of oblique-incidence sounding radio paths at mid-latitudes in the Asian region of Russia, a high (up to 40−50%) average-daily recording probability of the medium-scale traveling ionospheric disturbances in years of moderate solar activity has been identified. The daily variation in the recording probability of these disturbances at mid-latitude radio paths in the Asian region of Russia has a pronounced seasonal dependence. For the winter season, there is a daily maximum probability, reaching 100% on some days. In the summer season, it occurs at night hours of local time at the midpoint of the corresponding radio path. The most likely reason for this is the transition from winter to summer pattern of the atmosphere zonal circulation.
- Keywords
- Date of publication
- 15.06.2024
- Year of publication
- 2024
- Number of purchasers
- 0
- Views
- 46
References
- 1. Вертоградов Г.Г., Денисенко П.Ф., Вертоградова Е.Г., Урядов В.П. Мониторинг среднемасштабных перемещающихся ионосферных возмущений по результатам наклонного ЛЧМ-зондирования ионосферы // Электромагнитные волны и электронные системы. Т. 13. № 5. С. 35–44. 2008.
- 2. Подлесный А.В., Брынько И.Г., Куркин В.И., Березовский В.А., Киселев А.М., Петухов Е.В. Многофункциональный ЛЧМ ионозонд для мониторинга ионосферы // Гелиогеофизические исследования. Вып. 4. С. 24–31. 2013.
- 3. Софьин А.В., Куркин В.И. Исследование пространственных областей влияния ПИВ на ионограммы наклонного зондирования ионосферы // Труды XXVII Всероссийской открытой научной конференции “Распространение радиоволн” [Электронный ресурс]: научное электронное издание. Калининград: Издательство БФУ им. И. Канта. С. 358–363. 2021.
- 4. Heitmann A.J., Cervera M.A., Gardiner-Garden R.S., Holdsworth D.A., MacKinnon A.D., Reid I.M., Ward B.D. Observations and modelling of travelling ionospheric disturbance signatures from an Australian network of oblique angle-of-arrival sounders // Radio Sci. V. 53. № 9. P. 1089–1107. 2018. https://doi.org/10.1029/2018RS006613
- 5. Kurkin V.I., Medvedeva I.V., Podlesnyi A.V. Effect of sudden stratosphere warming on characteristics of medium-scale traveling ionospheric disturbances in the Asian region of Russia // Adv. Space Res. 2023. https://doi.org/10.1016/j.asr.2023.09.020
- 6. Long C., Yu T., Sun Y.-Y., Yan X., Zhang J., Yang N., Wang J., Xia C., Liang Y., Ye H. Atmospheric gravity wave derived from the neutral wind with 5-minute resolution routinely retrieved by meteor radar at Mohe // Remote Sensing. V. 15. № 2. ID 296. 2023. https://doi.org/10.3390/rs15020296
- 7. Medvedev A.V., Ratovsky K.G., Tolstikov M.V., Alsatkin S.S., Scherbakov A.A. Studying of the spatial-temporal structure of wavelike ionospheric disturbances on the base of Irkutsk incoherent scatter radar and Digisonde data // J. Atmos. Sol.-Terr. Phy. V. 105–106. P. 350–357. 2013. https://doi.org/10.1016/j.jastp.2013.09.001
- 8. Munro G.H. Travelling disturbances in the ionosphere // P. Roy. Soc. Lond. A Mat. V. 202. № 1069. P. 208–223. 1950. https://doi.org/10.1098/rspa.1950.0095
- 9. Verhulst T., Altadill D., Mielich J. et al. Vertical and oblique HF sounding with a network of synchronised ionosondes // Adv. Space Res. V. 60. № 8. P. 1644–1656. 2017. https://doi.org/10.1016/j.asr.2017.06.033
- 10. Vybornov F., Sheiner O., Kolchev A., Zykov E., Chernov A., Shumaev V., Pershin A. On the results of a special experiment on the registration of traveling ionospheric disturbances by a system of synchronously operating chirp ionosondes // Atmosphere. V. 13. № 1. P. 84–98. 2022. https://doi.org/10.3390/atmos13010084
- 11. Wells H.W., Watts J.M., George D.E. Detection of rapidly moving ionospheric clouds // Phys. Rev. V. 69. № 9–10. P. 540–541. 1946. https://doi.org/10.1103/PhysRev.69.540
- 12. Zolesi B., Fontana G., Perrone L.et al. A new campaign for oblique incidence ionospheric sounding over Europe and its data application // J. Atmos. Sol.-Terr. Phy. V. 70. № 6. P. 854–869. 2008. https://doi.org/10.1016/j.jastp.2007.02.015